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The Award database is continually updated throughout the year. As a result, data for FY19 is not expected to be complete until April, 2020.

  1. STTR Phase I: Advanced Fuel Cell Energy-Management Electronics and Control for Microgrid

    SBC: Technology Holding, LLC            Topic: EL

    This Small Business Technology Transfer (STTR) PhaseI project will design, fabricate, and validate a novel low cost (under $40/kW), robust and high-power-density 3 kW fuel cell (FC) power-conditioning system (PCS) suitable for lower voltage FC stacks, comprising a high-frequency inverter (HFI) followed by a forced cyclo-converter, which yields the following features: (1) 300 kHz switching frequen ...

    STTR Phase I 2006 National Science Foundation
  2. SBIR Phase II: Multi-Environment Probability Density Function (PDF) Method for Modeling Turbulent Combustion Using Detailed Chemistry

    SBC: Reaction Engineering International            Topic: IT

    This Small Business Innovation Research (SBIR) Phase II project will extend the applicability of the multi-environment probability density function (MEPDF) method to model turbulent combustion problems with realistic chemical kinetics within comprehensive Computational Fluid Dynamic (CFD) simulations of practical combustion equipment. The project aims to further advance the MEPDF method by extendi ...

    SBIR Phase II 2006 National Science Foundation
  3. SBIR Phase II: Long-Life Nozzles for Abrasive-Slurry-Jet Cutting

    SBC: Synergy Innovations, Inc.            Topic: MI

    The Small Business Innovation Research (SBIR) Phase II project will develop a high-pressure abrasive slurry jet cutting tool for almost all materials. The key aspect of this innovation is the elimination of nozzle grit erosion by fluid dynamic means. Past attempts to use abrasive slurry cutting tools have been troubled by unacceptable wear of the nozzles by the abrasive, and the associated loss o ...

    SBIR Phase II 2006 National Science Foundation
  4. SBIR Phase II: T-Splines for Surface Intersection

    SBC: T-Spline Company            Topic: IT

    This SBIR Phase II project addresses what is considered to be a significant unsolved problem in the Computer-Aided Design (CAD) industry; the fact that many CAD models contain numerous small, unwanted holes or gaps. These gaps occur most often along the seams where two surfaces in a CAD model meet, such as where a wing meets the fuselage of an airplane, and result from fundamental mathematical lim ...

    SBIR Phase II 2006 National Science Foundation
  5. SBIR Phase I: An Innovative Method for Removing Resist from Wafers

    SBC: Uncopiers, Inc.            Topic: CT

    This Small Business Innovation Research (SBIR) Phase I Project seeks to develop an innovative method for removing resist from semiconductor wafers. The Microcavitation Resist Remover will help enable the low-k integration critical to the next generation of faster chips. Microcavitation will be a mechanical removal process influenced by the mechanical properties of fracture rather than the chemical ...

    SBIR Phase I 2006 National Science Foundation
  6. SBIR Phase II: Innovative And Cost-Effective Process for Net-Shape Microfabrication of Ceramic Components

    SBC: Technology Holding, LLC            Topic: N/A

    This Small Business Innovation Research (SBIR) Phase II project will develop a ceramic hydrogen fuel appliance (CHFA) using ceramic microreactor modules (CMMs) using a low-cost, net-shape manufacturing process, and a new material, that was developed in the Phase I project. The new material developed was demonstrated to have excellent capability for cost-effective microfabri ...

    SBIR Phase II 2003 National Science Foundation
  7. SBIR Phase II: Innovative And Cost-Effective Process for Net-Shape Microfabrication of Ceramic Components

    SBC: Technology Holding, LLC            Topic: N/A

    This Small Business Innovation Research (SBIR) Phase II project will develop a ceramic hydrogen fuel appliance (CHFA) using ceramic microreactor modules (CMMs) using a low-cost, net-shape manufacturing process, and a new material, that was developed in the Phase I project. The new material developed was demonstrated to have excellent capability for cost-effective microfabri ...

    SBIR Phase I 2003 National Science Foundation
  8. SBIR Phase I: New Heat Flow Sensor Development for High Throughput Microcalorimeters

    SBC: Energetic Genomics Corporation            Topic: N/A

    This Small Business Innovation Research Phase I project will yield a new heat flow or differential temperature sensing technology that will fundamentally improve micro-calorimeters and other instruments that depend on temperature measurement or control. The activity will complete the detailed design and fabrication of a new type of heat flow sensor having 10 to 100 times greater sensitivity than ...

    SBIR Phase I 2003 National Science Foundation
  9. SBIR Phase I: Bio-based Design of Structural Ceramics

    SBC: Javelin3D, LLC            Topic: N/A

    This Small Business Innovation Research (SBIR) Phase I project will identify materials with desirable properties and performance standards. Rapid advances in communication technology, flight-based transportation, medical components and military strategy due to rapidly changing global alliances is pushing a need for materials that goes beyond current capabilities. This project will use advanced ...

    SBIR Phase I 2003 National Science Foundation
  10. SBIR Phase II: Field Demonstration of a Novel Biotechnology for In-Situ Bioremediation of Methyl Tert-Butyl Ether (MTBE) in Groundwater

    SBC: MICROVI BIOTECH, INC.            Topic: N/A

    This Small Business Innovation Research (SBIR) Phase II project aims to develop a novel process for in-situ bioremediation of methyl tert-butyl ether (MTBE) in groundwater. The Environmental Protection Agency (EPA) considers MTBE a potential human carcinogen. Currently, MTBE's Maximum Contaminant Level (MCL) in drinking water has been set for 18 parts per billion. It is estimated that the cost of ...

    SBIR Phase I 2003 National Science Foundation

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